Experimental Study on Multi Bubble Ice Breaking Under Layer Ice Boundary Conditions

Wenqi Guo, Fulin Yu, Chao Su, Zhanquan Li, Fengguang Jia, Yueying Gong
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Abstract

Under certain conditions of bubble spacing and bubble to ice distance, the motion state and ice breaking effect of horizontal and vertical bubbles under ice plate boundary conditions were studied. Bubbles are generated through underwater discharge, and the generating device is placed horizontally or vertically below the ice plate, and the experimental phenomenon is observed through an ultra-high-speed camera. Firstly, the motion characteristics and ice breaking ability of two horizontal bubbles under an unperforated ice block were demonstrated. Then, the motion characteristics of two horizontal bubbles and two vertical bubbles under a porous ice block, the breaking effect of the ice block, and the water mound phenomenon on the free surface were observed. The experiment observed unique bubble behavior, including bubble fusion, bubble collapse, and oblique jet, as well as the influence of bubble-bubble and bubble-ice interactions on the morphology evolution and ice breaking effect of bubbles. The results indicate that the ice breaking effect of the interaction between bubbles and perforated ice plates is weaker than that of non-perforated ice plates, which may be more helpful for subsequent bubble ice breaking research.
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层冰边界条件下的多气泡破冰实验研究
在一定的气泡间距和气泡与冰距离条件下,研究了冰板边界条件下水平和垂直气泡的运动状态和破冰效果。气泡通过水下放电产生,产生装置水平或垂直置于冰板下方,通过超高速摄像机观察实验现象。首先,演示了两个水平气泡在未穿孔冰块下的运动特性和破冰能力。然后,观察了多孔冰块下两个水平气泡和两个垂直气泡的运动特性、冰块的破碎效果以及自由表面的水堆现象。实验观察到了独特的气泡行为,包括气泡融合、气泡崩溃和斜向喷射,以及气泡-气泡和气泡-冰相互作用对气泡形态演变和破冰效果的影响。结果表明,气泡与有孔冰板相互作用的破冰效果弱于无孔冰板,这可能更有助于后续的气泡破冰研究。
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